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Slurry sampling-electrothermal

Cobalt, Nickel, Copper Plants Ultrasonic slurry sampling, electrothermal AAS [85]... [Pg.195]

Aller, A.J. and Robles, L.C. (1998b) Determination of selenocystamine by slurry sampling electrothermal atomic absorption spectrometry after a selective preconcentration by living Pseudomonas putida.J. Anal. At. Spectrom., 13, 469—476. [Pg.397]

C.-Y. Ho, S.-J. Jiang, Determination of Cr, Zn, Cd and Pb in milk powder by slurry sampling electrothermal vaporization inductively coupled plasma mass spectrometry, J. Anal. Atom. Spectrom., 17 (2002), 688-692. [Pg.435]

Hauptkorn S. and Krivan V. (1994) Determination of silicon in boron nitride by slurry sampling electrothermal atomic absorption spectrometry, Spectrochim Acta, Part B 49 221—228. [Pg.321]

Li, P.-C., Jiang, S.-J. (2006) Slurry sampling electrothermal vaporization inductively coupled plasma mass spectrometry for the determination of Cr, Cd and Pb in plastics. Anal. Bioanal. Chem., 385,1092-1097. [Pg.1076]

Younes, M.E.B., Gregoire, D.C., Chakrabarti, C.L. (1999) Vaporization and removal of silica for the direct analysis of geological materials by slurry sampling electrothermal vaporization-inductively coupled plasma-mass spectrometry. /. Anal. At. Spectrom., 14,1703-1708. [Pg.1077]

Lu, H.H., Jiang, S.J. (2001) Organic acids as the modifier to determine Zn, Cd, Ti and Pb in soil by slurry sampling electrothermal vaporization inductively-coupled plasma mass spectrometry. Anal. Chim. Acta, 429,247-255. [Pg.1077]

M. Felipe-Sotelo, M. J. Cal-Prieto, M. P. Gomez-Carracedo, J. M. Andrade, A. Carlosena and D. Prada, Handling complex effects in slurry-sampling-electrothermal atomic absorption spectrometry by multivariate calibration, Anal. Chim. Acta, 2006, 571(2), 315-323. [Pg.256]

Wibetoe, G., Takuwa, D. T., Lund, W. D. and Sawula, G. Coulter particle analysis used for studying the effect of sample treatment in slurry sampling electrothermal atomic absorption spectrometry. Fresenius J. Anal. Chem. 363 46, 1999. [Pg.250]

Rossi F, Acampora R, Vacca C et al (1987) Prenatal and postnatal antimony exposure in rats effect on vasomotor reactivity development of pups. Teratog Carcinog Mutagen 7(5) 491-496 Sanchez-Martinez M, Perez-Corona T, Camara C et al (2013) Migration of antimony from PET containers into regulated EU food simulants. Food Chem 141(2) 816-822 Santos MC, Nobrega JA, Baccan N et al (2010) Determination of toxic elements in plastics from waste electrical and electronic equipment by slurry sampling electrothermal atomic absorption spectrometry. Talanta 81(4—5) 1781-1787 Sax L (2010) Polyethylene terephthalate may yield endocrine disrupters. Environ Health Perspect 118(4) 445 8... [Pg.228]

Trace determinations in different metal bases (e.g., lead, gallium, and indium) can make use of pre-concentration based on a partial dissolution of the matrix (see Ref [367]). Refractory metals such as molybdenum, niobium, tungsten, and tantalum powders are definitely difficult to dissolve or to keep in solution and require trace matrix separations to achieve a reliable volatilization of the analytes, e.g. in graphite furnace AAS. Here, slurry sampling electrothermal AAS, as has been extensively investigated for these matrices by Krivan et al. (see, e.g.. Refs. [227, 343, 344]), is a worthwhile alternative, especially as contamination is prevented and calibration by addition of aqueous aliquots of the analytes is often possible. [Pg.202]

Coedo, A. G., Dorado,T., Padilla, 1., Maibusch, R., and Kuss, H. M. (2000). Slurry sampling electrothermal vaporization inductively coupled plasma mass spectrometry for steelmaking flue dust analysis. Spectrochim.Acta, Part B 55(2), 185-196. [Pg.203]


See other pages where Slurry sampling-electrothermal is mentioned: [Pg.351]    [Pg.351]    [Pg.383]    [Pg.188]    [Pg.188]    [Pg.300]    [Pg.264]    [Pg.237]   


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